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An integrated dielectrophoresis-active hydrophoretic microchip for continuous particle filtration and separation

机译:集成的介电泳活性电泳芯片,用于连续的颗粒过滤和分离

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摘要

Microfluidic manipulation of biological objects from mixture has a significant application in sample preparation and clinical diagnosis. This work presents a dielectrophoresis-active hydrophoretic device for continuous label-free particle separation and filtration. This device comprises interdigitated electrodes and a hydrophoretic channel. According to the difference of lateral positions of polystyrene particles, the device can run at separation or filtration modes by altering the power supply voltages. With an applied voltage of 24 Vp-p, both 3 and 10 μm beads had close lateral positions and were redirected to the same outlet. Under a voltage of 36 Vp-p, beads with the diameters of 3 and 10 μm had different lateral positions and were collected from the different outlets. Separation of 5 and 10 μm particles was achieved to demonstrate the relatively small size difference of the beads. This device has great potential in a range of lab-on-a-chip applications.
机译:来自混合物的生物物体的微流体操作在样品制备和临床诊断中具有重要的应用。这项工作提出了一种用于连续无标记颗粒分离和过滤的介电电泳活性电泳仪。该装置包括指状电极和电泳通道。根据聚苯乙烯颗粒横向位置的不同,该设备可以通过更改电源电压以分离或过滤模式运行。在施加的电压为24 Vp-p的情况下,3和10μm的珠子都具有靠近的横向位置,并重定向到同一出口。在36 Vp-p的电压下,直径分别为3和10μm的珠具有不同的横向位置,并从不同的出口收集。实现了5和10μm颗粒的分离,以证明珠子的尺寸差异相对较小。该器件在一系列片上实验室应用中具有巨大的潜力。

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